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Genome-Wide Identification and Comprehensive Analyses of TCP Gene Family in Banana (Musa L.)

机译:香蕉(Musa L.)中TCP基因家族的基因组鉴定及综合分析

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Teosinte Branched, Cycloidea, Proliferating Cell Factor proteins are a large family of transcription factors in angiosperms and are specific for each plant species, presenting a highly conserved TCP domain. In plants, they play a key role in the development and metabolism processes. In this study MaTCP genes have been updated, so, 46 MaTCP, 12 MbTCP and 25 MiTCP genes were identified in Musa acuminata, Musa balbisiana and Musa itinerans genomes, respectively. Chromosome location, gene structure, sequence alignment, gene classification and conserved domains of MaTCP, MbTCP and MiTCP proteins were predicted and analyzed. Our phylogenetic analysis classified MaTCP, MbTCP and MiTCP genes into two classes, which was further supported by the conserved motif structure and exon-intron organization. Inquiry in the promoter region suggested the possible roles of TCP banana genes in biological and physiological processes. RNA-seq analysis indicated MiTCP3-MiTCP5, MiTCP9, MiTCP20, MiTCP2J, MiTCP33, MiTCP4J and MITCP44 took part during wild banana responsiveness at both normal and low temperatures growing. Gene evolution indicated a high conservation level within monocots TCP genes through orthologous identification between banana, rice, maize and Arabidopsis. Moreover, similar functionality and a high level of conservation were also seen through homology relationship analysis between MiTCP and MbTCP genes with MaTCP genes. The present study provides valuable information about characterization, evolution, diversity and functionality of MaTCP, MbTCP and MiTCP genes and will contribute to better understanding of the biological and physiological roles of TCP-TF in plants.
机译:Teosite分支、环状、增殖细胞因子蛋白是被子植物中的一大类转录因子,对每种植物都有特异性,呈现高度保守的TCP结构域。在植物中,它们在发育和代谢过程中起着关键作用。在这项研究中,对MaTCP基因进行了更新,因此,在Musa acuminata、Musa balbisiana和Musa Invenans基因组中分别鉴定出46个MaTCP、12个MbTCP和25个MiTCP基因。对MaTCP、MbTCP和MiTCP蛋白的染色体定位、基因结构、序列比对、基因分类和保守结构域进行了预测和分析。我们的系统发育分析将MaTCP、MbTCP和MiTCP基因分为两类,这进一步得到了保守的基序结构和外显子-内含子组织的支持。对启动子区域的研究表明TCP香蕉基因可能在生物和生理过程中发挥作用。RNA序列分析表明,MiTCP3-MiTCP5、MiTCP9、MiTCP20、MiTCP2J、MiTCP33、MiTCP4J和MITCP44参与了野生香蕉在正常和低温下的生长反应。通过香蕉、水稻、玉米和拟南芥之间的同源鉴定,基因进化表明单子叶植物TCP基因具有较高的保守性。此外,通过MiTCP和MbTCP基因与MaTCP基因之间的同源关系分析,也发现了类似的功能和高水平的保守性。本研究提供了有关MaTCP、MbTCP和MiTCP基因的特征、进化、多样性和功能的宝贵信息,并将有助于更好地理解TCP-TF在植物中的生物学和生理作用。

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